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1 #include <linux/ceph/ceph_debug.h>
2 
3 #include <linux/module.h>
4 #include <linux/fs.h>
5 #include <linux/slab.h>
6 #include <linux/string.h>
7 #include <linux/uaccess.h>
8 #include <linux/kernel.h>
9 #include <linux/writeback.h>
10 #include <linux/vmalloc.h>
11 #include <linux/posix_acl.h>
12 #include <linux/random.h>
13 
14 #include "super.h"
15 #include "mds_client.h"
16 #include "cache.h"
17 #include <linux/ceph/decode.h>
18 
19 /*
20  * Ceph inode operations
21  *
22  * Implement basic inode helpers (get, alloc) and inode ops (getattr,
23  * setattr, etc.), xattr helpers, and helpers for assimilating
24  * metadata returned by the MDS into our cache.
25  *
26  * Also define helpers for doing asynchronous writeback, invalidation,
27  * and truncation for the benefit of those who can't afford to block
28  * (typically because they are in the message handler path).
29  */
30 
31 static const struct inode_operations ceph_symlink_iops;
32 
33 static void ceph_invalidate_work(struct work_struct *work);
34 static void ceph_writeback_work(struct work_struct *work);
35 static void ceph_vmtruncate_work(struct work_struct *work);
36 
37 /*
38  * find or create an inode, given the ceph ino number
39  */
ceph_set_ino_cb(struct inode * inode,void * data)40 static int ceph_set_ino_cb(struct inode *inode, void *data)
41 {
42 	ceph_inode(inode)->i_vino = *(struct ceph_vino *)data;
43 	inode->i_ino = ceph_vino_to_ino(*(struct ceph_vino *)data);
44 	return 0;
45 }
46 
ceph_get_inode(struct super_block * sb,struct ceph_vino vino)47 struct inode *ceph_get_inode(struct super_block *sb, struct ceph_vino vino)
48 {
49 	struct inode *inode;
50 	ino_t t = ceph_vino_to_ino(vino);
51 
52 	inode = iget5_locked(sb, t, ceph_ino_compare, ceph_set_ino_cb, &vino);
53 	if (inode == NULL)
54 		return ERR_PTR(-ENOMEM);
55 	if (inode->i_state & I_NEW) {
56 		dout("get_inode created new inode %p %llx.%llx ino %llx\n",
57 		     inode, ceph_vinop(inode), (u64)inode->i_ino);
58 		unlock_new_inode(inode);
59 	}
60 
61 	dout("get_inode on %lu=%llx.%llx got %p\n", inode->i_ino, vino.ino,
62 	     vino.snap, inode);
63 	return inode;
64 }
65 
66 /*
67  * get/constuct snapdir inode for a given directory
68  */
ceph_get_snapdir(struct inode * parent)69 struct inode *ceph_get_snapdir(struct inode *parent)
70 {
71 	struct ceph_vino vino = {
72 		.ino = ceph_ino(parent),
73 		.snap = CEPH_SNAPDIR,
74 	};
75 	struct inode *inode = ceph_get_inode(parent->i_sb, vino);
76 	struct ceph_inode_info *ci = ceph_inode(inode);
77 
78 	BUG_ON(!S_ISDIR(parent->i_mode));
79 	if (IS_ERR(inode))
80 		return inode;
81 	inode->i_mode = parent->i_mode;
82 	inode->i_uid = parent->i_uid;
83 	inode->i_gid = parent->i_gid;
84 	inode->i_op = &ceph_snapdir_iops;
85 	inode->i_fop = &ceph_snapdir_fops;
86 	ci->i_snap_caps = CEPH_CAP_PIN; /* so we can open */
87 	ci->i_rbytes = 0;
88 	return inode;
89 }
90 
91 const struct inode_operations ceph_file_iops = {
92 	.permission = ceph_permission,
93 	.setattr = ceph_setattr,
94 	.getattr = ceph_getattr,
95 	.setxattr = ceph_setxattr,
96 	.getxattr = ceph_getxattr,
97 	.listxattr = ceph_listxattr,
98 	.removexattr = ceph_removexattr,
99 	.get_acl = ceph_get_acl,
100 	.set_acl = ceph_set_acl,
101 };
102 
103 
104 /*
105  * We use a 'frag tree' to keep track of the MDS's directory fragments
106  * for a given inode (usually there is just a single fragment).  We
107  * need to know when a child frag is delegated to a new MDS, or when
108  * it is flagged as replicated, so we can direct our requests
109  * accordingly.
110  */
111 
112 /*
113  * find/create a frag in the tree
114  */
__get_or_create_frag(struct ceph_inode_info * ci,u32 f)115 static struct ceph_inode_frag *__get_or_create_frag(struct ceph_inode_info *ci,
116 						    u32 f)
117 {
118 	struct rb_node **p;
119 	struct rb_node *parent = NULL;
120 	struct ceph_inode_frag *frag;
121 	int c;
122 
123 	p = &ci->i_fragtree.rb_node;
124 	while (*p) {
125 		parent = *p;
126 		frag = rb_entry(parent, struct ceph_inode_frag, node);
127 		c = ceph_frag_compare(f, frag->frag);
128 		if (c < 0)
129 			p = &(*p)->rb_left;
130 		else if (c > 0)
131 			p = &(*p)->rb_right;
132 		else
133 			return frag;
134 	}
135 
136 	frag = kmalloc(sizeof(*frag), GFP_NOFS);
137 	if (!frag) {
138 		pr_err("__get_or_create_frag ENOMEM on %p %llx.%llx "
139 		       "frag %x\n", &ci->vfs_inode,
140 		       ceph_vinop(&ci->vfs_inode), f);
141 		return ERR_PTR(-ENOMEM);
142 	}
143 	frag->frag = f;
144 	frag->split_by = 0;
145 	frag->mds = -1;
146 	frag->ndist = 0;
147 
148 	rb_link_node(&frag->node, parent, p);
149 	rb_insert_color(&frag->node, &ci->i_fragtree);
150 
151 	dout("get_or_create_frag added %llx.%llx frag %x\n",
152 	     ceph_vinop(&ci->vfs_inode), f);
153 	return frag;
154 }
155 
156 /*
157  * find a specific frag @f
158  */
__ceph_find_frag(struct ceph_inode_info * ci,u32 f)159 struct ceph_inode_frag *__ceph_find_frag(struct ceph_inode_info *ci, u32 f)
160 {
161 	struct rb_node *n = ci->i_fragtree.rb_node;
162 
163 	while (n) {
164 		struct ceph_inode_frag *frag =
165 			rb_entry(n, struct ceph_inode_frag, node);
166 		int c = ceph_frag_compare(f, frag->frag);
167 		if (c < 0)
168 			n = n->rb_left;
169 		else if (c > 0)
170 			n = n->rb_right;
171 		else
172 			return frag;
173 	}
174 	return NULL;
175 }
176 
177 /*
178  * Choose frag containing the given value @v.  If @pfrag is
179  * specified, copy the frag delegation info to the caller if
180  * it is present.
181  */
__ceph_choose_frag(struct ceph_inode_info * ci,u32 v,struct ceph_inode_frag * pfrag,int * found)182 static u32 __ceph_choose_frag(struct ceph_inode_info *ci, u32 v,
183 			      struct ceph_inode_frag *pfrag, int *found)
184 {
185 	u32 t = ceph_frag_make(0, 0);
186 	struct ceph_inode_frag *frag;
187 	unsigned nway, i;
188 	u32 n;
189 
190 	if (found)
191 		*found = 0;
192 
193 	while (1) {
194 		WARN_ON(!ceph_frag_contains_value(t, v));
195 		frag = __ceph_find_frag(ci, t);
196 		if (!frag)
197 			break; /* t is a leaf */
198 		if (frag->split_by == 0) {
199 			if (pfrag)
200 				memcpy(pfrag, frag, sizeof(*pfrag));
201 			if (found)
202 				*found = 1;
203 			break;
204 		}
205 
206 		/* choose child */
207 		nway = 1 << frag->split_by;
208 		dout("choose_frag(%x) %x splits by %d (%d ways)\n", v, t,
209 		     frag->split_by, nway);
210 		for (i = 0; i < nway; i++) {
211 			n = ceph_frag_make_child(t, frag->split_by, i);
212 			if (ceph_frag_contains_value(n, v)) {
213 				t = n;
214 				break;
215 			}
216 		}
217 		BUG_ON(i == nway);
218 	}
219 	dout("choose_frag(%x) = %x\n", v, t);
220 
221 	return t;
222 }
223 
ceph_choose_frag(struct ceph_inode_info * ci,u32 v,struct ceph_inode_frag * pfrag,int * found)224 u32 ceph_choose_frag(struct ceph_inode_info *ci, u32 v,
225 		     struct ceph_inode_frag *pfrag, int *found)
226 {
227 	u32 ret;
228 	mutex_lock(&ci->i_fragtree_mutex);
229 	ret = __ceph_choose_frag(ci, v, pfrag, found);
230 	mutex_unlock(&ci->i_fragtree_mutex);
231 	return ret;
232 }
233 
234 /*
235  * Process dirfrag (delegation) info from the mds.  Include leaf
236  * fragment in tree ONLY if ndist > 0.  Otherwise, only
237  * branches/splits are included in i_fragtree)
238  */
ceph_fill_dirfrag(struct inode * inode,struct ceph_mds_reply_dirfrag * dirinfo)239 static int ceph_fill_dirfrag(struct inode *inode,
240 			     struct ceph_mds_reply_dirfrag *dirinfo)
241 {
242 	struct ceph_inode_info *ci = ceph_inode(inode);
243 	struct ceph_inode_frag *frag;
244 	u32 id = le32_to_cpu(dirinfo->frag);
245 	int mds = le32_to_cpu(dirinfo->auth);
246 	int ndist = le32_to_cpu(dirinfo->ndist);
247 	int diri_auth = -1;
248 	int i;
249 	int err = 0;
250 
251 	spin_lock(&ci->i_ceph_lock);
252 	if (ci->i_auth_cap)
253 		diri_auth = ci->i_auth_cap->mds;
254 	spin_unlock(&ci->i_ceph_lock);
255 
256 	mutex_lock(&ci->i_fragtree_mutex);
257 	if (ndist == 0 && mds == diri_auth) {
258 		/* no delegation info needed. */
259 		frag = __ceph_find_frag(ci, id);
260 		if (!frag)
261 			goto out;
262 		if (frag->split_by == 0) {
263 			/* tree leaf, remove */
264 			dout("fill_dirfrag removed %llx.%llx frag %x"
265 			     " (no ref)\n", ceph_vinop(inode), id);
266 			rb_erase(&frag->node, &ci->i_fragtree);
267 			kfree(frag);
268 		} else {
269 			/* tree branch, keep and clear */
270 			dout("fill_dirfrag cleared %llx.%llx frag %x"
271 			     " referral\n", ceph_vinop(inode), id);
272 			frag->mds = -1;
273 			frag->ndist = 0;
274 		}
275 		goto out;
276 	}
277 
278 
279 	/* find/add this frag to store mds delegation info */
280 	frag = __get_or_create_frag(ci, id);
281 	if (IS_ERR(frag)) {
282 		/* this is not the end of the world; we can continue
283 		   with bad/inaccurate delegation info */
284 		pr_err("fill_dirfrag ENOMEM on mds ref %llx.%llx fg %x\n",
285 		       ceph_vinop(inode), le32_to_cpu(dirinfo->frag));
286 		err = -ENOMEM;
287 		goto out;
288 	}
289 
290 	frag->mds = mds;
291 	frag->ndist = min_t(u32, ndist, CEPH_MAX_DIRFRAG_REP);
292 	for (i = 0; i < frag->ndist; i++)
293 		frag->dist[i] = le32_to_cpu(dirinfo->dist[i]);
294 	dout("fill_dirfrag %llx.%llx frag %x ndist=%d\n",
295 	     ceph_vinop(inode), frag->frag, frag->ndist);
296 
297 out:
298 	mutex_unlock(&ci->i_fragtree_mutex);
299 	return err;
300 }
301 
ceph_fill_fragtree(struct inode * inode,struct ceph_frag_tree_head * fragtree,struct ceph_mds_reply_dirfrag * dirinfo)302 static int ceph_fill_fragtree(struct inode *inode,
303 			      struct ceph_frag_tree_head *fragtree,
304 			      struct ceph_mds_reply_dirfrag *dirinfo)
305 {
306 	struct ceph_inode_info *ci = ceph_inode(inode);
307 	struct ceph_inode_frag *frag;
308 	struct rb_node *rb_node;
309 	int i;
310 	u32 id, nsplits;
311 	bool update = false;
312 
313 	mutex_lock(&ci->i_fragtree_mutex);
314 	nsplits = le32_to_cpu(fragtree->nsplits);
315 	if (nsplits) {
316 		i = prandom_u32() % nsplits;
317 		id = le32_to_cpu(fragtree->splits[i].frag);
318 		if (!__ceph_find_frag(ci, id))
319 			update = true;
320 	} else if (!RB_EMPTY_ROOT(&ci->i_fragtree)) {
321 		rb_node = rb_first(&ci->i_fragtree);
322 		frag = rb_entry(rb_node, struct ceph_inode_frag, node);
323 		if (frag->frag != ceph_frag_make(0, 0) || rb_next(rb_node))
324 			update = true;
325 	}
326 	if (!update && dirinfo) {
327 		id = le32_to_cpu(dirinfo->frag);
328 		if (id != __ceph_choose_frag(ci, id, NULL, NULL))
329 			update = true;
330 	}
331 	if (!update)
332 		goto out_unlock;
333 
334 	dout("fill_fragtree %llx.%llx\n", ceph_vinop(inode));
335 	rb_node = rb_first(&ci->i_fragtree);
336 	for (i = 0; i < nsplits; i++) {
337 		id = le32_to_cpu(fragtree->splits[i].frag);
338 		frag = NULL;
339 		while (rb_node) {
340 			frag = rb_entry(rb_node, struct ceph_inode_frag, node);
341 			if (ceph_frag_compare(frag->frag, id) >= 0) {
342 				if (frag->frag != id)
343 					frag = NULL;
344 				else
345 					rb_node = rb_next(rb_node);
346 				break;
347 			}
348 			rb_node = rb_next(rb_node);
349 			rb_erase(&frag->node, &ci->i_fragtree);
350 			kfree(frag);
351 			frag = NULL;
352 		}
353 		if (!frag) {
354 			frag = __get_or_create_frag(ci, id);
355 			if (IS_ERR(frag))
356 				continue;
357 		}
358 		frag->split_by = le32_to_cpu(fragtree->splits[i].by);
359 		dout(" frag %x split by %d\n", frag->frag, frag->split_by);
360 	}
361 	while (rb_node) {
362 		frag = rb_entry(rb_node, struct ceph_inode_frag, node);
363 		rb_node = rb_next(rb_node);
364 		rb_erase(&frag->node, &ci->i_fragtree);
365 		kfree(frag);
366 	}
367 out_unlock:
368 	mutex_unlock(&ci->i_fragtree_mutex);
369 	return 0;
370 }
371 
372 /*
373  * initialize a newly allocated inode.
374  */
ceph_alloc_inode(struct super_block * sb)375 struct inode *ceph_alloc_inode(struct super_block *sb)
376 {
377 	struct ceph_inode_info *ci;
378 	int i;
379 
380 	ci = kmem_cache_alloc(ceph_inode_cachep, GFP_NOFS);
381 	if (!ci)
382 		return NULL;
383 
384 	dout("alloc_inode %p\n", &ci->vfs_inode);
385 
386 	spin_lock_init(&ci->i_ceph_lock);
387 
388 	ci->i_version = 0;
389 	ci->i_inline_version = 0;
390 	ci->i_time_warp_seq = 0;
391 	ci->i_ceph_flags = 0;
392 	atomic64_set(&ci->i_ordered_count, 1);
393 	atomic64_set(&ci->i_release_count, 1);
394 	atomic64_set(&ci->i_complete_seq[0], 0);
395 	atomic64_set(&ci->i_complete_seq[1], 0);
396 	ci->i_symlink = NULL;
397 
398 	memset(&ci->i_dir_layout, 0, sizeof(ci->i_dir_layout));
399 
400 	ci->i_fragtree = RB_ROOT;
401 	mutex_init(&ci->i_fragtree_mutex);
402 
403 	ci->i_xattrs.blob = NULL;
404 	ci->i_xattrs.prealloc_blob = NULL;
405 	ci->i_xattrs.dirty = false;
406 	ci->i_xattrs.index = RB_ROOT;
407 	ci->i_xattrs.count = 0;
408 	ci->i_xattrs.names_size = 0;
409 	ci->i_xattrs.vals_size = 0;
410 	ci->i_xattrs.version = 0;
411 	ci->i_xattrs.index_version = 0;
412 
413 	ci->i_caps = RB_ROOT;
414 	ci->i_auth_cap = NULL;
415 	ci->i_dirty_caps = 0;
416 	ci->i_flushing_caps = 0;
417 	INIT_LIST_HEAD(&ci->i_dirty_item);
418 	INIT_LIST_HEAD(&ci->i_flushing_item);
419 	ci->i_prealloc_cap_flush = NULL;
420 	ci->i_cap_flush_tree = RB_ROOT;
421 	init_waitqueue_head(&ci->i_cap_wq);
422 	ci->i_hold_caps_min = 0;
423 	ci->i_hold_caps_max = 0;
424 	INIT_LIST_HEAD(&ci->i_cap_delay_list);
425 	INIT_LIST_HEAD(&ci->i_cap_snaps);
426 	ci->i_head_snapc = NULL;
427 	ci->i_snap_caps = 0;
428 
429 	for (i = 0; i < CEPH_FILE_MODE_NUM; i++)
430 		ci->i_nr_by_mode[i] = 0;
431 
432 	mutex_init(&ci->i_truncate_mutex);
433 	ci->i_truncate_seq = 0;
434 	ci->i_truncate_size = 0;
435 	ci->i_truncate_pending = 0;
436 
437 	ci->i_max_size = 0;
438 	ci->i_reported_size = 0;
439 	ci->i_wanted_max_size = 0;
440 	ci->i_requested_max_size = 0;
441 
442 	ci->i_pin_ref = 0;
443 	ci->i_rd_ref = 0;
444 	ci->i_rdcache_ref = 0;
445 	ci->i_wr_ref = 0;
446 	ci->i_wb_ref = 0;
447 	ci->i_wrbuffer_ref = 0;
448 	ci->i_wrbuffer_ref_head = 0;
449 	ci->i_shared_gen = 0;
450 	ci->i_rdcache_gen = 0;
451 	ci->i_rdcache_revoking = 0;
452 
453 	INIT_LIST_HEAD(&ci->i_unsafe_writes);
454 	INIT_LIST_HEAD(&ci->i_unsafe_dirops);
455 	INIT_LIST_HEAD(&ci->i_unsafe_iops);
456 	spin_lock_init(&ci->i_unsafe_lock);
457 
458 	ci->i_snap_realm = NULL;
459 	INIT_LIST_HEAD(&ci->i_snap_realm_item);
460 	INIT_LIST_HEAD(&ci->i_snap_flush_item);
461 
462 	INIT_WORK(&ci->i_wb_work, ceph_writeback_work);
463 	INIT_WORK(&ci->i_pg_inv_work, ceph_invalidate_work);
464 
465 	INIT_WORK(&ci->i_vmtruncate_work, ceph_vmtruncate_work);
466 
467 	ceph_fscache_inode_init(ci);
468 
469 	return &ci->vfs_inode;
470 }
471 
ceph_i_callback(struct rcu_head * head)472 static void ceph_i_callback(struct rcu_head *head)
473 {
474 	struct inode *inode = container_of(head, struct inode, i_rcu);
475 	struct ceph_inode_info *ci = ceph_inode(inode);
476 
477 	kfree(ci->i_symlink);
478 	kmem_cache_free(ceph_inode_cachep, ci);
479 }
480 
ceph_destroy_inode(struct inode * inode)481 void ceph_destroy_inode(struct inode *inode)
482 {
483 	struct ceph_inode_info *ci = ceph_inode(inode);
484 	struct ceph_inode_frag *frag;
485 	struct rb_node *n;
486 
487 	dout("destroy_inode %p ino %llx.%llx\n", inode, ceph_vinop(inode));
488 
489 	ceph_fscache_unregister_inode_cookie(ci);
490 
491 	ceph_queue_caps_release(inode);
492 
493 	/*
494 	 * we may still have a snap_realm reference if there are stray
495 	 * caps in i_snap_caps.
496 	 */
497 	if (ci->i_snap_realm) {
498 		struct ceph_mds_client *mdsc =
499 			ceph_sb_to_client(ci->vfs_inode.i_sb)->mdsc;
500 		struct ceph_snap_realm *realm = ci->i_snap_realm;
501 
502 		dout(" dropping residual ref to snap realm %p\n", realm);
503 		spin_lock(&realm->inodes_with_caps_lock);
504 		list_del_init(&ci->i_snap_realm_item);
505 		spin_unlock(&realm->inodes_with_caps_lock);
506 		ceph_put_snap_realm(mdsc, realm);
507 	}
508 
509 	while ((n = rb_first(&ci->i_fragtree)) != NULL) {
510 		frag = rb_entry(n, struct ceph_inode_frag, node);
511 		rb_erase(n, &ci->i_fragtree);
512 		kfree(frag);
513 	}
514 
515 	__ceph_destroy_xattrs(ci);
516 	if (ci->i_xattrs.blob)
517 		ceph_buffer_put(ci->i_xattrs.blob);
518 	if (ci->i_xattrs.prealloc_blob)
519 		ceph_buffer_put(ci->i_xattrs.prealloc_blob);
520 
521 	call_rcu(&inode->i_rcu, ceph_i_callback);
522 }
523 
ceph_drop_inode(struct inode * inode)524 int ceph_drop_inode(struct inode *inode)
525 {
526 	/*
527 	 * Positve dentry and corresponding inode are always accompanied
528 	 * in MDS reply. So no need to keep inode in the cache after
529 	 * dropping all its aliases.
530 	 */
531 	return 1;
532 }
533 
534 /*
535  * Helpers to fill in size, ctime, mtime, and atime.  We have to be
536  * careful because either the client or MDS may have more up to date
537  * info, depending on which capabilities are held, and whether
538  * time_warp_seq or truncate_seq have increased.  (Ordinarily, mtime
539  * and size are monotonically increasing, except when utimes() or
540  * truncate() increments the corresponding _seq values.)
541  */
ceph_fill_file_size(struct inode * inode,int issued,u32 truncate_seq,u64 truncate_size,u64 size)542 int ceph_fill_file_size(struct inode *inode, int issued,
543 			u32 truncate_seq, u64 truncate_size, u64 size)
544 {
545 	struct ceph_inode_info *ci = ceph_inode(inode);
546 	int queue_trunc = 0;
547 
548 	if (ceph_seq_cmp(truncate_seq, ci->i_truncate_seq) > 0 ||
549 	    (truncate_seq == ci->i_truncate_seq && size > inode->i_size)) {
550 		dout("size %lld -> %llu\n", inode->i_size, size);
551 		inode->i_size = size;
552 		inode->i_blocks = (size + (1<<9) - 1) >> 9;
553 		ci->i_reported_size = size;
554 		if (truncate_seq != ci->i_truncate_seq) {
555 			dout("truncate_seq %u -> %u\n",
556 			     ci->i_truncate_seq, truncate_seq);
557 			ci->i_truncate_seq = truncate_seq;
558 
559 			/* the MDS should have revoked these caps */
560 			WARN_ON_ONCE(issued & (CEPH_CAP_FILE_EXCL |
561 					       CEPH_CAP_FILE_RD |
562 					       CEPH_CAP_FILE_WR |
563 					       CEPH_CAP_FILE_LAZYIO));
564 			/*
565 			 * If we hold relevant caps, or in the case where we're
566 			 * not the only client referencing this file and we
567 			 * don't hold those caps, then we need to check whether
568 			 * the file is either opened or mmaped
569 			 */
570 			if ((issued & (CEPH_CAP_FILE_CACHE|
571 				       CEPH_CAP_FILE_BUFFER)) ||
572 			    mapping_mapped(inode->i_mapping) ||
573 			    __ceph_caps_file_wanted(ci)) {
574 				ci->i_truncate_pending++;
575 				queue_trunc = 1;
576 			}
577 		}
578 	}
579 	if (ceph_seq_cmp(truncate_seq, ci->i_truncate_seq) >= 0 &&
580 	    ci->i_truncate_size != truncate_size) {
581 		dout("truncate_size %lld -> %llu\n", ci->i_truncate_size,
582 		     truncate_size);
583 		ci->i_truncate_size = truncate_size;
584 	}
585 
586 	if (queue_trunc)
587 		ceph_fscache_invalidate(inode);
588 
589 	return queue_trunc;
590 }
591 
ceph_fill_file_time(struct inode * inode,int issued,u64 time_warp_seq,struct timespec * ctime,struct timespec * mtime,struct timespec * atime)592 void ceph_fill_file_time(struct inode *inode, int issued,
593 			 u64 time_warp_seq, struct timespec *ctime,
594 			 struct timespec *mtime, struct timespec *atime)
595 {
596 	struct ceph_inode_info *ci = ceph_inode(inode);
597 	int warn = 0;
598 
599 	if (issued & (CEPH_CAP_FILE_EXCL|
600 		      CEPH_CAP_FILE_WR|
601 		      CEPH_CAP_FILE_BUFFER|
602 		      CEPH_CAP_AUTH_EXCL|
603 		      CEPH_CAP_XATTR_EXCL)) {
604 		if (timespec_compare(ctime, &inode->i_ctime) > 0) {
605 			dout("ctime %ld.%09ld -> %ld.%09ld inc w/ cap\n",
606 			     inode->i_ctime.tv_sec, inode->i_ctime.tv_nsec,
607 			     ctime->tv_sec, ctime->tv_nsec);
608 			inode->i_ctime = *ctime;
609 		}
610 		if (ceph_seq_cmp(time_warp_seq, ci->i_time_warp_seq) > 0) {
611 			/* the MDS did a utimes() */
612 			dout("mtime %ld.%09ld -> %ld.%09ld "
613 			     "tw %d -> %d\n",
614 			     inode->i_mtime.tv_sec, inode->i_mtime.tv_nsec,
615 			     mtime->tv_sec, mtime->tv_nsec,
616 			     ci->i_time_warp_seq, (int)time_warp_seq);
617 
618 			inode->i_mtime = *mtime;
619 			inode->i_atime = *atime;
620 			ci->i_time_warp_seq = time_warp_seq;
621 		} else if (time_warp_seq == ci->i_time_warp_seq) {
622 			/* nobody did utimes(); take the max */
623 			if (timespec_compare(mtime, &inode->i_mtime) > 0) {
624 				dout("mtime %ld.%09ld -> %ld.%09ld inc\n",
625 				     inode->i_mtime.tv_sec,
626 				     inode->i_mtime.tv_nsec,
627 				     mtime->tv_sec, mtime->tv_nsec);
628 				inode->i_mtime = *mtime;
629 			}
630 			if (timespec_compare(atime, &inode->i_atime) > 0) {
631 				dout("atime %ld.%09ld -> %ld.%09ld inc\n",
632 				     inode->i_atime.tv_sec,
633 				     inode->i_atime.tv_nsec,
634 				     atime->tv_sec, atime->tv_nsec);
635 				inode->i_atime = *atime;
636 			}
637 		} else if (issued & CEPH_CAP_FILE_EXCL) {
638 			/* we did a utimes(); ignore mds values */
639 		} else {
640 			warn = 1;
641 		}
642 	} else {
643 		/* we have no write|excl caps; whatever the MDS says is true */
644 		if (ceph_seq_cmp(time_warp_seq, ci->i_time_warp_seq) >= 0) {
645 			inode->i_ctime = *ctime;
646 			inode->i_mtime = *mtime;
647 			inode->i_atime = *atime;
648 			ci->i_time_warp_seq = time_warp_seq;
649 		} else {
650 			warn = 1;
651 		}
652 	}
653 	if (warn) /* time_warp_seq shouldn't go backwards */
654 		dout("%p mds time_warp_seq %llu < %u\n",
655 		     inode, time_warp_seq, ci->i_time_warp_seq);
656 }
657 
658 /*
659  * Populate an inode based on info from mds.  May be called on new or
660  * existing inodes.
661  */
fill_inode(struct inode * inode,struct page * locked_page,struct ceph_mds_reply_info_in * iinfo,struct ceph_mds_reply_dirfrag * dirinfo,struct ceph_mds_session * session,unsigned long ttl_from,int cap_fmode,struct ceph_cap_reservation * caps_reservation)662 static int fill_inode(struct inode *inode, struct page *locked_page,
663 		      struct ceph_mds_reply_info_in *iinfo,
664 		      struct ceph_mds_reply_dirfrag *dirinfo,
665 		      struct ceph_mds_session *session,
666 		      unsigned long ttl_from, int cap_fmode,
667 		      struct ceph_cap_reservation *caps_reservation)
668 {
669 	struct ceph_mds_client *mdsc = ceph_inode_to_client(inode)->mdsc;
670 	struct ceph_mds_reply_inode *info = iinfo->in;
671 	struct ceph_inode_info *ci = ceph_inode(inode);
672 	int issued = 0, implemented, new_issued;
673 	struct timespec mtime, atime, ctime;
674 	struct ceph_buffer *xattr_blob = NULL;
675 	struct ceph_cap *new_cap = NULL;
676 	int err = 0;
677 	bool wake = false;
678 	bool queue_trunc = false;
679 	bool new_version = false;
680 	bool fill_inline = false;
681 
682 	dout("fill_inode %p ino %llx.%llx v %llu had %llu\n",
683 	     inode, ceph_vinop(inode), le64_to_cpu(info->version),
684 	     ci->i_version);
685 
686 	/* prealloc new cap struct */
687 	if (info->cap.caps && ceph_snap(inode) == CEPH_NOSNAP)
688 		new_cap = ceph_get_cap(mdsc, caps_reservation);
689 
690 	/*
691 	 * prealloc xattr data, if it looks like we'll need it.  only
692 	 * if len > 4 (meaning there are actually xattrs; the first 4
693 	 * bytes are the xattr count).
694 	 */
695 	if (iinfo->xattr_len > 4) {
696 		xattr_blob = ceph_buffer_new(iinfo->xattr_len, GFP_NOFS);
697 		if (!xattr_blob)
698 			pr_err("fill_inode ENOMEM xattr blob %d bytes\n",
699 			       iinfo->xattr_len);
700 	}
701 
702 	spin_lock(&ci->i_ceph_lock);
703 
704 	/*
705 	 * provided version will be odd if inode value is projected,
706 	 * even if stable.  skip the update if we have newer stable
707 	 * info (ours>=theirs, e.g. due to racing mds replies), unless
708 	 * we are getting projected (unstable) info (in which case the
709 	 * version is odd, and we want ours>theirs).
710 	 *   us   them
711 	 *   2    2     skip
712 	 *   3    2     skip
713 	 *   3    3     update
714 	 */
715 	if (ci->i_version == 0 ||
716 	    ((info->cap.flags & CEPH_CAP_FLAG_AUTH) &&
717 	     le64_to_cpu(info->version) > (ci->i_version & ~1)))
718 		new_version = true;
719 
720 	issued = __ceph_caps_issued(ci, &implemented);
721 	issued |= implemented | __ceph_caps_dirty(ci);
722 	new_issued = ~issued & le32_to_cpu(info->cap.caps);
723 
724 	/* update inode */
725 	ci->i_version = le64_to_cpu(info->version);
726 	inode->i_version++;
727 	inode->i_rdev = le32_to_cpu(info->rdev);
728 	/* directories have fl_stripe_unit set to zero */
729 	if (le32_to_cpu(info->layout.fl_stripe_unit))
730 		inode->i_blkbits =
731 			fls(le32_to_cpu(info->layout.fl_stripe_unit)) - 1;
732 	else
733 		inode->i_blkbits = CEPH_BLOCK_SHIFT;
734 
735 	if ((new_version || (new_issued & CEPH_CAP_AUTH_SHARED)) &&
736 	    (issued & CEPH_CAP_AUTH_EXCL) == 0) {
737 		inode->i_mode = le32_to_cpu(info->mode);
738 		inode->i_uid = make_kuid(&init_user_ns, le32_to_cpu(info->uid));
739 		inode->i_gid = make_kgid(&init_user_ns, le32_to_cpu(info->gid));
740 		dout("%p mode 0%o uid.gid %d.%d\n", inode, inode->i_mode,
741 		     from_kuid(&init_user_ns, inode->i_uid),
742 		     from_kgid(&init_user_ns, inode->i_gid));
743 	}
744 
745 	if ((new_version || (new_issued & CEPH_CAP_LINK_SHARED)) &&
746 	    (issued & CEPH_CAP_LINK_EXCL) == 0)
747 		set_nlink(inode, le32_to_cpu(info->nlink));
748 
749 	if (new_version || (new_issued & CEPH_CAP_ANY_RD)) {
750 		/* be careful with mtime, atime, size */
751 		ceph_decode_timespec(&atime, &info->atime);
752 		ceph_decode_timespec(&mtime, &info->mtime);
753 		ceph_decode_timespec(&ctime, &info->ctime);
754 		ceph_fill_file_time(inode, issued,
755 				le32_to_cpu(info->time_warp_seq),
756 				&ctime, &mtime, &atime);
757 	}
758 
759 	if (new_version ||
760 	    (new_issued & (CEPH_CAP_ANY_FILE_RD | CEPH_CAP_ANY_FILE_WR))) {
761 		if (ci->i_layout.fl_pg_pool != info->layout.fl_pg_pool)
762 			ci->i_ceph_flags &= ~CEPH_I_POOL_PERM;
763 		ci->i_layout = info->layout;
764 
765 		queue_trunc = ceph_fill_file_size(inode, issued,
766 					le32_to_cpu(info->truncate_seq),
767 					le64_to_cpu(info->truncate_size),
768 					le64_to_cpu(info->size));
769 		/* only update max_size on auth cap */
770 		if ((info->cap.flags & CEPH_CAP_FLAG_AUTH) &&
771 		    ci->i_max_size != le64_to_cpu(info->max_size)) {
772 			dout("max_size %lld -> %llu\n", ci->i_max_size,
773 					le64_to_cpu(info->max_size));
774 			ci->i_max_size = le64_to_cpu(info->max_size);
775 		}
776 	}
777 
778 	/* xattrs */
779 	/* note that if i_xattrs.len <= 4, i_xattrs.data will still be NULL. */
780 	if ((ci->i_xattrs.version == 0 || !(issued & CEPH_CAP_XATTR_EXCL))  &&
781 	    le64_to_cpu(info->xattr_version) > ci->i_xattrs.version) {
782 		if (ci->i_xattrs.blob)
783 			ceph_buffer_put(ci->i_xattrs.blob);
784 		ci->i_xattrs.blob = xattr_blob;
785 		if (xattr_blob)
786 			memcpy(ci->i_xattrs.blob->vec.iov_base,
787 			       iinfo->xattr_data, iinfo->xattr_len);
788 		ci->i_xattrs.version = le64_to_cpu(info->xattr_version);
789 		ceph_forget_all_cached_acls(inode);
790 		xattr_blob = NULL;
791 	}
792 
793 	inode->i_mapping->a_ops = &ceph_aops;
794 
795 	switch (inode->i_mode & S_IFMT) {
796 	case S_IFIFO:
797 	case S_IFBLK:
798 	case S_IFCHR:
799 	case S_IFSOCK:
800 		init_special_inode(inode, inode->i_mode, inode->i_rdev);
801 		inode->i_op = &ceph_file_iops;
802 		break;
803 	case S_IFREG:
804 		inode->i_op = &ceph_file_iops;
805 		inode->i_fop = &ceph_file_fops;
806 		break;
807 	case S_IFLNK:
808 		inode->i_op = &ceph_symlink_iops;
809 		if (!ci->i_symlink) {
810 			u32 symlen = iinfo->symlink_len;
811 			char *sym;
812 
813 			spin_unlock(&ci->i_ceph_lock);
814 
815 			err = -EINVAL;
816 			if (WARN_ON(symlen != inode->i_size))
817 				goto out;
818 
819 			err = -ENOMEM;
820 			sym = kstrndup(iinfo->symlink, symlen, GFP_NOFS);
821 			if (!sym)
822 				goto out;
823 
824 			spin_lock(&ci->i_ceph_lock);
825 			if (!ci->i_symlink)
826 				ci->i_symlink = sym;
827 			else
828 				kfree(sym); /* lost a race */
829 		}
830 		inode->i_link = ci->i_symlink;
831 		break;
832 	case S_IFDIR:
833 		inode->i_op = &ceph_dir_iops;
834 		inode->i_fop = &ceph_dir_fops;
835 
836 		ci->i_dir_layout = iinfo->dir_layout;
837 
838 		ci->i_files = le64_to_cpu(info->files);
839 		ci->i_subdirs = le64_to_cpu(info->subdirs);
840 		ci->i_rbytes = le64_to_cpu(info->rbytes);
841 		ci->i_rfiles = le64_to_cpu(info->rfiles);
842 		ci->i_rsubdirs = le64_to_cpu(info->rsubdirs);
843 		ceph_decode_timespec(&ci->i_rctime, &info->rctime);
844 		break;
845 	default:
846 		pr_err("fill_inode %llx.%llx BAD mode 0%o\n",
847 		       ceph_vinop(inode), inode->i_mode);
848 	}
849 
850 	/* were we issued a capability? */
851 	if (info->cap.caps) {
852 		if (ceph_snap(inode) == CEPH_NOSNAP) {
853 			unsigned caps = le32_to_cpu(info->cap.caps);
854 			ceph_add_cap(inode, session,
855 				     le64_to_cpu(info->cap.cap_id),
856 				     cap_fmode, caps,
857 				     le32_to_cpu(info->cap.wanted),
858 				     le32_to_cpu(info->cap.seq),
859 				     le32_to_cpu(info->cap.mseq),
860 				     le64_to_cpu(info->cap.realm),
861 				     info->cap.flags, &new_cap);
862 
863 			/* set dir completion flag? */
864 			if (S_ISDIR(inode->i_mode) &&
865 			    ci->i_files == 0 && ci->i_subdirs == 0 &&
866 			    (caps & CEPH_CAP_FILE_SHARED) &&
867 			    (issued & CEPH_CAP_FILE_EXCL) == 0 &&
868 			    !__ceph_dir_is_complete(ci)) {
869 				dout(" marking %p complete (empty)\n", inode);
870 				i_size_write(inode, 0);
871 				__ceph_dir_set_complete(ci,
872 					atomic64_read(&ci->i_release_count),
873 					atomic64_read(&ci->i_ordered_count));
874 			}
875 
876 			wake = true;
877 		} else {
878 			dout(" %p got snap_caps %s\n", inode,
879 			     ceph_cap_string(le32_to_cpu(info->cap.caps)));
880 			ci->i_snap_caps |= le32_to_cpu(info->cap.caps);
881 			if (cap_fmode >= 0)
882 				__ceph_get_fmode(ci, cap_fmode);
883 		}
884 	} else if (cap_fmode >= 0) {
885 		pr_warn("mds issued no caps on %llx.%llx\n",
886 			   ceph_vinop(inode));
887 		__ceph_get_fmode(ci, cap_fmode);
888 	}
889 
890 	if (iinfo->inline_version > 0 &&
891 	    iinfo->inline_version >= ci->i_inline_version) {
892 		int cache_caps = CEPH_CAP_FILE_CACHE | CEPH_CAP_FILE_LAZYIO;
893 		ci->i_inline_version = iinfo->inline_version;
894 		if (ci->i_inline_version != CEPH_INLINE_NONE &&
895 		    (locked_page ||
896 		     (le32_to_cpu(info->cap.caps) & cache_caps)))
897 			fill_inline = true;
898 	}
899 
900 	spin_unlock(&ci->i_ceph_lock);
901 
902 	if (fill_inline)
903 		ceph_fill_inline_data(inode, locked_page,
904 				      iinfo->inline_data, iinfo->inline_len);
905 
906 	if (wake)
907 		wake_up_all(&ci->i_cap_wq);
908 
909 	/* queue truncate if we saw i_size decrease */
910 	if (queue_trunc)
911 		ceph_queue_vmtruncate(inode);
912 
913 	/* populate frag tree */
914 	if (S_ISDIR(inode->i_mode))
915 		ceph_fill_fragtree(inode, &info->fragtree, dirinfo);
916 
917 	/* update delegation info? */
918 	if (dirinfo)
919 		ceph_fill_dirfrag(inode, dirinfo);
920 
921 	err = 0;
922 out:
923 	if (new_cap)
924 		ceph_put_cap(mdsc, new_cap);
925 	if (xattr_blob)
926 		ceph_buffer_put(xattr_blob);
927 	return err;
928 }
929 
930 /*
931  * caller should hold session s_mutex.
932  */
update_dentry_lease(struct dentry * dentry,struct ceph_mds_reply_lease * lease,struct ceph_mds_session * session,unsigned long from_time)933 static void update_dentry_lease(struct dentry *dentry,
934 				struct ceph_mds_reply_lease *lease,
935 				struct ceph_mds_session *session,
936 				unsigned long from_time)
937 {
938 	struct ceph_dentry_info *di = ceph_dentry(dentry);
939 	long unsigned duration = le32_to_cpu(lease->duration_ms);
940 	long unsigned ttl = from_time + (duration * HZ) / 1000;
941 	long unsigned half_ttl = from_time + (duration * HZ / 2) / 1000;
942 	struct inode *dir;
943 
944 	/* only track leases on regular dentries */
945 	if (dentry->d_op != &ceph_dentry_ops)
946 		return;
947 
948 	spin_lock(&dentry->d_lock);
949 	dout("update_dentry_lease %p duration %lu ms ttl %lu\n",
950 	     dentry, duration, ttl);
951 
952 	/* make lease_rdcache_gen match directory */
953 	dir = d_inode(dentry->d_parent);
954 	di->lease_shared_gen = ceph_inode(dir)->i_shared_gen;
955 
956 	if (duration == 0)
957 		goto out_unlock;
958 
959 	if (di->lease_gen == session->s_cap_gen &&
960 	    time_before(ttl, dentry->d_time))
961 		goto out_unlock;  /* we already have a newer lease. */
962 
963 	if (di->lease_session && di->lease_session != session)
964 		goto out_unlock;
965 
966 	ceph_dentry_lru_touch(dentry);
967 
968 	if (!di->lease_session)
969 		di->lease_session = ceph_get_mds_session(session);
970 	di->lease_gen = session->s_cap_gen;
971 	di->lease_seq = le32_to_cpu(lease->seq);
972 	di->lease_renew_after = half_ttl;
973 	di->lease_renew_from = 0;
974 	dentry->d_time = ttl;
975 out_unlock:
976 	spin_unlock(&dentry->d_lock);
977 	return;
978 }
979 
980 /*
981  * splice a dentry to an inode.
982  * caller must hold directory i_mutex for this to be safe.
983  *
984  * we will only rehash the resulting dentry if @prehash is
985  * true; @prehash will be set to false (for the benefit of
986  * the caller) if we fail.
987  */
splice_dentry(struct dentry * dn,struct inode * in,bool * prehash)988 static struct dentry *splice_dentry(struct dentry *dn, struct inode *in,
989 				    bool *prehash)
990 {
991 	struct dentry *realdn;
992 
993 	BUG_ON(d_inode(dn));
994 
995 	/* dn must be unhashed */
996 	if (!d_unhashed(dn))
997 		d_drop(dn);
998 	realdn = d_splice_alias(in, dn);
999 	if (IS_ERR(realdn)) {
1000 		pr_err("splice_dentry error %ld %p inode %p ino %llx.%llx\n",
1001 		       PTR_ERR(realdn), dn, in, ceph_vinop(in));
1002 		if (prehash)
1003 			*prehash = false; /* don't rehash on error */
1004 		dn = realdn; /* note realdn contains the error */
1005 		goto out;
1006 	} else if (realdn) {
1007 		dout("dn %p (%d) spliced with %p (%d) "
1008 		     "inode %p ino %llx.%llx\n",
1009 		     dn, d_count(dn),
1010 		     realdn, d_count(realdn),
1011 		     d_inode(realdn), ceph_vinop(d_inode(realdn)));
1012 		dput(dn);
1013 		dn = realdn;
1014 	} else {
1015 		BUG_ON(!ceph_dentry(dn));
1016 		dout("dn %p attached to %p ino %llx.%llx\n",
1017 		     dn, d_inode(dn), ceph_vinop(d_inode(dn)));
1018 	}
1019 	if ((!prehash || *prehash) && d_unhashed(dn))
1020 		d_rehash(dn);
1021 out:
1022 	return dn;
1023 }
1024 
1025 /*
1026  * Incorporate results into the local cache.  This is either just
1027  * one inode, or a directory, dentry, and possibly linked-to inode (e.g.,
1028  * after a lookup).
1029  *
1030  * A reply may contain
1031  *         a directory inode along with a dentry.
1032  *  and/or a target inode
1033  *
1034  * Called with snap_rwsem (read).
1035  */
ceph_fill_trace(struct super_block * sb,struct ceph_mds_request * req,struct ceph_mds_session * session)1036 int ceph_fill_trace(struct super_block *sb, struct ceph_mds_request *req,
1037 		    struct ceph_mds_session *session)
1038 {
1039 	struct ceph_mds_reply_info_parsed *rinfo = &req->r_reply_info;
1040 	struct inode *in = NULL;
1041 	struct ceph_vino vino;
1042 	struct ceph_fs_client *fsc = ceph_sb_to_client(sb);
1043 	int err = 0;
1044 
1045 	dout("fill_trace %p is_dentry %d is_target %d\n", req,
1046 	     rinfo->head->is_dentry, rinfo->head->is_target);
1047 
1048 #if 0
1049 	/*
1050 	 * Debugging hook:
1051 	 *
1052 	 * If we resend completed ops to a recovering mds, we get no
1053 	 * trace.  Since that is very rare, pretend this is the case
1054 	 * to ensure the 'no trace' handlers in the callers behave.
1055 	 *
1056 	 * Fill in inodes unconditionally to avoid breaking cap
1057 	 * invariants.
1058 	 */
1059 	if (rinfo->head->op & CEPH_MDS_OP_WRITE) {
1060 		pr_info("fill_trace faking empty trace on %lld %s\n",
1061 			req->r_tid, ceph_mds_op_name(rinfo->head->op));
1062 		if (rinfo->head->is_dentry) {
1063 			rinfo->head->is_dentry = 0;
1064 			err = fill_inode(req->r_locked_dir,
1065 					 &rinfo->diri, rinfo->dirfrag,
1066 					 session, req->r_request_started, -1);
1067 		}
1068 		if (rinfo->head->is_target) {
1069 			rinfo->head->is_target = 0;
1070 			ininfo = rinfo->targeti.in;
1071 			vino.ino = le64_to_cpu(ininfo->ino);
1072 			vino.snap = le64_to_cpu(ininfo->snapid);
1073 			in = ceph_get_inode(sb, vino);
1074 			err = fill_inode(in, &rinfo->targeti, NULL,
1075 					 session, req->r_request_started,
1076 					 req->r_fmode);
1077 			iput(in);
1078 		}
1079 	}
1080 #endif
1081 
1082 	if (!rinfo->head->is_target && !rinfo->head->is_dentry) {
1083 		dout("fill_trace reply is empty!\n");
1084 		if (rinfo->head->result == 0 && req->r_locked_dir)
1085 			ceph_invalidate_dir_request(req);
1086 		return 0;
1087 	}
1088 
1089 	if (rinfo->head->is_dentry) {
1090 		struct inode *dir = req->r_locked_dir;
1091 
1092 		if (dir) {
1093 			err = fill_inode(dir, NULL,
1094 					 &rinfo->diri, rinfo->dirfrag,
1095 					 session, req->r_request_started, -1,
1096 					 &req->r_caps_reservation);
1097 			if (err < 0)
1098 				goto done;
1099 		} else {
1100 			WARN_ON_ONCE(1);
1101 		}
1102 
1103 		if (dir && req->r_op == CEPH_MDS_OP_LOOKUPNAME) {
1104 			struct qstr dname;
1105 			struct dentry *dn, *parent;
1106 
1107 			BUG_ON(!rinfo->head->is_target);
1108 			BUG_ON(req->r_dentry);
1109 
1110 			parent = d_find_any_alias(dir);
1111 			BUG_ON(!parent);
1112 
1113 			dname.name = rinfo->dname;
1114 			dname.len = rinfo->dname_len;
1115 			dname.hash = full_name_hash(dname.name, dname.len);
1116 			vino.ino = le64_to_cpu(rinfo->targeti.in->ino);
1117 			vino.snap = le64_to_cpu(rinfo->targeti.in->snapid);
1118 retry_lookup:
1119 			dn = d_lookup(parent, &dname);
1120 			dout("d_lookup on parent=%p name=%.*s got %p\n",
1121 			     parent, dname.len, dname.name, dn);
1122 
1123 			if (!dn) {
1124 				dn = d_alloc(parent, &dname);
1125 				dout("d_alloc %p '%.*s' = %p\n", parent,
1126 				     dname.len, dname.name, dn);
1127 				if (dn == NULL) {
1128 					dput(parent);
1129 					err = -ENOMEM;
1130 					goto done;
1131 				}
1132 				err = ceph_init_dentry(dn);
1133 				if (err < 0) {
1134 					dput(dn);
1135 					dput(parent);
1136 					goto done;
1137 				}
1138 			} else if (d_really_is_positive(dn) &&
1139 				   (ceph_ino(d_inode(dn)) != vino.ino ||
1140 				    ceph_snap(d_inode(dn)) != vino.snap)) {
1141 				dout(" dn %p points to wrong inode %p\n",
1142 				     dn, d_inode(dn));
1143 				d_delete(dn);
1144 				dput(dn);
1145 				goto retry_lookup;
1146 			}
1147 
1148 			req->r_dentry = dn;
1149 			dput(parent);
1150 		}
1151 	}
1152 
1153 	if (rinfo->head->is_target) {
1154 		vino.ino = le64_to_cpu(rinfo->targeti.in->ino);
1155 		vino.snap = le64_to_cpu(rinfo->targeti.in->snapid);
1156 
1157 		in = ceph_get_inode(sb, vino);
1158 		if (IS_ERR(in)) {
1159 			err = PTR_ERR(in);
1160 			goto done;
1161 		}
1162 		req->r_target_inode = in;
1163 
1164 		err = fill_inode(in, req->r_locked_page, &rinfo->targeti, NULL,
1165 				session, req->r_request_started,
1166 				(!req->r_aborted && rinfo->head->result == 0) ?
1167 				req->r_fmode : -1,
1168 				&req->r_caps_reservation);
1169 		if (err < 0) {
1170 			pr_err("fill_inode badness %p %llx.%llx\n",
1171 				in, ceph_vinop(in));
1172 			goto done;
1173 		}
1174 	}
1175 
1176 	/*
1177 	 * ignore null lease/binding on snapdir ENOENT, or else we
1178 	 * will have trouble splicing in the virtual snapdir later
1179 	 */
1180 	if (rinfo->head->is_dentry && !req->r_aborted &&
1181 	    req->r_locked_dir &&
1182 	    (rinfo->head->is_target || strncmp(req->r_dentry->d_name.name,
1183 					       fsc->mount_options->snapdir_name,
1184 					       req->r_dentry->d_name.len))) {
1185 		/*
1186 		 * lookup link rename   : null -> possibly existing inode
1187 		 * mknod symlink mkdir  : null -> new inode
1188 		 * unlink               : linked -> null
1189 		 */
1190 		struct inode *dir = req->r_locked_dir;
1191 		struct dentry *dn = req->r_dentry;
1192 		bool have_dir_cap, have_lease;
1193 
1194 		BUG_ON(!dn);
1195 		BUG_ON(!dir);
1196 		BUG_ON(d_inode(dn->d_parent) != dir);
1197 		BUG_ON(ceph_ino(dir) !=
1198 		       le64_to_cpu(rinfo->diri.in->ino));
1199 		BUG_ON(ceph_snap(dir) !=
1200 		       le64_to_cpu(rinfo->diri.in->snapid));
1201 
1202 		/* do we have a lease on the whole dir? */
1203 		have_dir_cap =
1204 			(le32_to_cpu(rinfo->diri.in->cap.caps) &
1205 			 CEPH_CAP_FILE_SHARED);
1206 
1207 		/* do we have a dn lease? */
1208 		have_lease = have_dir_cap ||
1209 			le32_to_cpu(rinfo->dlease->duration_ms);
1210 		if (!have_lease)
1211 			dout("fill_trace  no dentry lease or dir cap\n");
1212 
1213 		/* rename? */
1214 		if (req->r_old_dentry && req->r_op == CEPH_MDS_OP_RENAME) {
1215 			struct inode *olddir = req->r_old_dentry_dir;
1216 			BUG_ON(!olddir);
1217 
1218 			dout(" src %p '%pd' dst %p '%pd'\n",
1219 			     req->r_old_dentry,
1220 			     req->r_old_dentry,
1221 			     dn, dn);
1222 			dout("fill_trace doing d_move %p -> %p\n",
1223 			     req->r_old_dentry, dn);
1224 
1225 			/* d_move screws up sibling dentries' offsets */
1226 			ceph_dir_clear_ordered(dir);
1227 			ceph_dir_clear_ordered(olddir);
1228 
1229 			d_move(req->r_old_dentry, dn);
1230 			dout(" src %p '%pd' dst %p '%pd'\n",
1231 			     req->r_old_dentry,
1232 			     req->r_old_dentry,
1233 			     dn, dn);
1234 
1235 			/* ensure target dentry is invalidated, despite
1236 			   rehashing bug in vfs_rename_dir */
1237 			ceph_invalidate_dentry_lease(dn);
1238 
1239 			dout("dn %p gets new offset %lld\n", req->r_old_dentry,
1240 			     ceph_dentry(req->r_old_dentry)->offset);
1241 
1242 			dn = req->r_old_dentry;  /* use old_dentry */
1243 		}
1244 
1245 		/* null dentry? */
1246 		if (!rinfo->head->is_target) {
1247 			dout("fill_trace null dentry\n");
1248 			if (d_really_is_positive(dn)) {
1249 				ceph_dir_clear_ordered(dir);
1250 				dout("d_delete %p\n", dn);
1251 				d_delete(dn);
1252 			} else {
1253 				dout("d_instantiate %p NULL\n", dn);
1254 				d_instantiate(dn, NULL);
1255 				if (have_lease && d_unhashed(dn))
1256 					d_rehash(dn);
1257 				update_dentry_lease(dn, rinfo->dlease,
1258 						    session,
1259 						    req->r_request_started);
1260 			}
1261 			goto done;
1262 		}
1263 
1264 		/* attach proper inode */
1265 		if (d_really_is_negative(dn)) {
1266 			ceph_dir_clear_ordered(dir);
1267 			ihold(in);
1268 			dn = splice_dentry(dn, in, &have_lease);
1269 			if (IS_ERR(dn)) {
1270 				err = PTR_ERR(dn);
1271 				goto done;
1272 			}
1273 			req->r_dentry = dn;  /* may have spliced */
1274 		} else if (d_really_is_positive(dn) && d_inode(dn) != in) {
1275 			dout(" %p links to %p %llx.%llx, not %llx.%llx\n",
1276 			     dn, d_inode(dn), ceph_vinop(d_inode(dn)),
1277 			     ceph_vinop(in));
1278 			have_lease = false;
1279 		}
1280 
1281 		if (have_lease)
1282 			update_dentry_lease(dn, rinfo->dlease, session,
1283 					    req->r_request_started);
1284 		dout(" final dn %p\n", dn);
1285 	} else if (!req->r_aborted &&
1286 		   (req->r_op == CEPH_MDS_OP_LOOKUPSNAP ||
1287 		    req->r_op == CEPH_MDS_OP_MKSNAP)) {
1288 		struct dentry *dn = req->r_dentry;
1289 		struct inode *dir = req->r_locked_dir;
1290 
1291 		/* fill out a snapdir LOOKUPSNAP dentry */
1292 		BUG_ON(!dn);
1293 		BUG_ON(!dir);
1294 		BUG_ON(ceph_snap(dir) != CEPH_SNAPDIR);
1295 		dout(" linking snapped dir %p to dn %p\n", in, dn);
1296 		ceph_dir_clear_ordered(dir);
1297 		ihold(in);
1298 		dn = splice_dentry(dn, in, NULL);
1299 		if (IS_ERR(dn)) {
1300 			err = PTR_ERR(dn);
1301 			goto done;
1302 		}
1303 		req->r_dentry = dn;  /* may have spliced */
1304 	}
1305 done:
1306 	dout("fill_trace done err=%d\n", err);
1307 	return err;
1308 }
1309 
1310 /*
1311  * Prepopulate our cache with readdir results, leases, etc.
1312  */
readdir_prepopulate_inodes_only(struct ceph_mds_request * req,struct ceph_mds_session * session)1313 static int readdir_prepopulate_inodes_only(struct ceph_mds_request *req,
1314 					   struct ceph_mds_session *session)
1315 {
1316 	struct ceph_mds_reply_info_parsed *rinfo = &req->r_reply_info;
1317 	int i, err = 0;
1318 
1319 	for (i = 0; i < rinfo->dir_nr; i++) {
1320 		struct ceph_vino vino;
1321 		struct inode *in;
1322 		int rc;
1323 
1324 		vino.ino = le64_to_cpu(rinfo->dir_in[i].in->ino);
1325 		vino.snap = le64_to_cpu(rinfo->dir_in[i].in->snapid);
1326 
1327 		in = ceph_get_inode(req->r_dentry->d_sb, vino);
1328 		if (IS_ERR(in)) {
1329 			err = PTR_ERR(in);
1330 			dout("new_inode badness got %d\n", err);
1331 			continue;
1332 		}
1333 		rc = fill_inode(in, NULL, &rinfo->dir_in[i], NULL, session,
1334 				req->r_request_started, -1,
1335 				&req->r_caps_reservation);
1336 		if (rc < 0) {
1337 			pr_err("fill_inode badness on %p got %d\n", in, rc);
1338 			err = rc;
1339 			continue;
1340 		}
1341 	}
1342 
1343 	return err;
1344 }
1345 
ceph_readdir_cache_release(struct ceph_readdir_cache_control * ctl)1346 void ceph_readdir_cache_release(struct ceph_readdir_cache_control *ctl)
1347 {
1348 	if (ctl->page) {
1349 		kunmap(ctl->page);
1350 		page_cache_release(ctl->page);
1351 		ctl->page = NULL;
1352 	}
1353 }
1354 
fill_readdir_cache(struct inode * dir,struct dentry * dn,struct ceph_readdir_cache_control * ctl,struct ceph_mds_request * req)1355 static int fill_readdir_cache(struct inode *dir, struct dentry *dn,
1356 			      struct ceph_readdir_cache_control *ctl,
1357 			      struct ceph_mds_request *req)
1358 {
1359 	struct ceph_inode_info *ci = ceph_inode(dir);
1360 	unsigned nsize = PAGE_CACHE_SIZE / sizeof(struct dentry*);
1361 	unsigned idx = ctl->index % nsize;
1362 	pgoff_t pgoff = ctl->index / nsize;
1363 
1364 	if (!ctl->page || pgoff != page_index(ctl->page)) {
1365 		ceph_readdir_cache_release(ctl);
1366 		if (idx == 0)
1367 			ctl->page = grab_cache_page(&dir->i_data, pgoff);
1368 		else
1369 			ctl->page = find_lock_page(&dir->i_data, pgoff);
1370 		if (!ctl->page) {
1371 			ctl->index = -1;
1372 			return idx == 0 ? -ENOMEM : 0;
1373 		}
1374 		/* reading/filling the cache are serialized by
1375 		 * i_mutex, no need to use page lock */
1376 		unlock_page(ctl->page);
1377 		ctl->dentries = kmap(ctl->page);
1378 		if (idx == 0)
1379 			memset(ctl->dentries, 0, PAGE_CACHE_SIZE);
1380 	}
1381 
1382 	if (req->r_dir_release_cnt == atomic64_read(&ci->i_release_count) &&
1383 	    req->r_dir_ordered_cnt == atomic64_read(&ci->i_ordered_count)) {
1384 		dout("readdir cache dn %p idx %d\n", dn, ctl->index);
1385 		ctl->dentries[idx] = dn;
1386 		ctl->index++;
1387 	} else {
1388 		dout("disable readdir cache\n");
1389 		ctl->index = -1;
1390 	}
1391 	return 0;
1392 }
1393 
ceph_readdir_prepopulate(struct ceph_mds_request * req,struct ceph_mds_session * session)1394 int ceph_readdir_prepopulate(struct ceph_mds_request *req,
1395 			     struct ceph_mds_session *session)
1396 {
1397 	struct dentry *parent = req->r_dentry;
1398 	struct ceph_mds_reply_info_parsed *rinfo = &req->r_reply_info;
1399 	struct qstr dname;
1400 	struct dentry *dn;
1401 	struct inode *in;
1402 	int err = 0, ret, i;
1403 	struct inode *snapdir = NULL;
1404 	struct ceph_mds_request_head *rhead = req->r_request->front.iov_base;
1405 	struct ceph_dentry_info *di;
1406 	u32 frag = le32_to_cpu(rhead->args.readdir.frag);
1407 	struct ceph_readdir_cache_control cache_ctl = {};
1408 
1409 	if (req->r_aborted)
1410 		return readdir_prepopulate_inodes_only(req, session);
1411 
1412 	if (rinfo->dir_dir &&
1413 	    le32_to_cpu(rinfo->dir_dir->frag) != frag) {
1414 		dout("readdir_prepopulate got new frag %x -> %x\n",
1415 		     frag, le32_to_cpu(rinfo->dir_dir->frag));
1416 		frag = le32_to_cpu(rinfo->dir_dir->frag);
1417 		if (ceph_frag_is_leftmost(frag))
1418 			req->r_readdir_offset = 2;
1419 		else
1420 			req->r_readdir_offset = 0;
1421 	}
1422 
1423 	if (le32_to_cpu(rinfo->head->op) == CEPH_MDS_OP_LSSNAP) {
1424 		snapdir = ceph_get_snapdir(d_inode(parent));
1425 		parent = d_find_alias(snapdir);
1426 		dout("readdir_prepopulate %d items under SNAPDIR dn %p\n",
1427 		     rinfo->dir_nr, parent);
1428 	} else {
1429 		dout("readdir_prepopulate %d items under dn %p\n",
1430 		     rinfo->dir_nr, parent);
1431 		if (rinfo->dir_dir)
1432 			ceph_fill_dirfrag(d_inode(parent), rinfo->dir_dir);
1433 	}
1434 
1435 	if (ceph_frag_is_leftmost(frag) && req->r_readdir_offset == 2) {
1436 		/* note dir version at start of readdir so we can tell
1437 		 * if any dentries get dropped */
1438 		struct ceph_inode_info *ci = ceph_inode(d_inode(parent));
1439 		req->r_dir_release_cnt = atomic64_read(&ci->i_release_count);
1440 		req->r_dir_ordered_cnt = atomic64_read(&ci->i_ordered_count);
1441 		req->r_readdir_cache_idx = 0;
1442 	}
1443 
1444 	cache_ctl.index = req->r_readdir_cache_idx;
1445 
1446 	/* FIXME: release caps/leases if error occurs */
1447 	for (i = 0; i < rinfo->dir_nr; i++) {
1448 		struct ceph_vino vino;
1449 
1450 		dname.name = rinfo->dir_dname[i];
1451 		dname.len = rinfo->dir_dname_len[i];
1452 		dname.hash = full_name_hash(dname.name, dname.len);
1453 
1454 		vino.ino = le64_to_cpu(rinfo->dir_in[i].in->ino);
1455 		vino.snap = le64_to_cpu(rinfo->dir_in[i].in->snapid);
1456 
1457 retry_lookup:
1458 		dn = d_lookup(parent, &dname);
1459 		dout("d_lookup on parent=%p name=%.*s got %p\n",
1460 		     parent, dname.len, dname.name, dn);
1461 
1462 		if (!dn) {
1463 			dn = d_alloc(parent, &dname);
1464 			dout("d_alloc %p '%.*s' = %p\n", parent,
1465 			     dname.len, dname.name, dn);
1466 			if (dn == NULL) {
1467 				dout("d_alloc badness\n");
1468 				err = -ENOMEM;
1469 				goto out;
1470 			}
1471 			ret = ceph_init_dentry(dn);
1472 			if (ret < 0) {
1473 				dput(dn);
1474 				err = ret;
1475 				goto out;
1476 			}
1477 		} else if (d_really_is_positive(dn) &&
1478 			   (ceph_ino(d_inode(dn)) != vino.ino ||
1479 			    ceph_snap(d_inode(dn)) != vino.snap)) {
1480 			dout(" dn %p points to wrong inode %p\n",
1481 			     dn, d_inode(dn));
1482 			d_delete(dn);
1483 			dput(dn);
1484 			goto retry_lookup;
1485 		}
1486 
1487 		/* inode */
1488 		if (d_really_is_positive(dn)) {
1489 			in = d_inode(dn);
1490 		} else {
1491 			in = ceph_get_inode(parent->d_sb, vino);
1492 			if (IS_ERR(in)) {
1493 				dout("new_inode badness\n");
1494 				d_drop(dn);
1495 				dput(dn);
1496 				err = PTR_ERR(in);
1497 				goto out;
1498 			}
1499 		}
1500 
1501 		ret = fill_inode(in, NULL, &rinfo->dir_in[i], NULL, session,
1502 				 req->r_request_started, -1,
1503 				 &req->r_caps_reservation);
1504 		if (ret < 0) {
1505 			pr_err("fill_inode badness on %p\n", in);
1506 			if (d_really_is_negative(dn))
1507 				iput(in);
1508 			d_drop(dn);
1509 			err = ret;
1510 			goto next_item;
1511 		}
1512 
1513 		if (d_really_is_negative(dn)) {
1514 			struct dentry *realdn = splice_dentry(dn, in, NULL);
1515 			if (IS_ERR(realdn)) {
1516 				err = PTR_ERR(realdn);
1517 				d_drop(dn);
1518 				goto next_item;
1519 			}
1520 			dn = realdn;
1521 		}
1522 
1523 		di = dn->d_fsdata;
1524 		di->offset = ceph_make_fpos(frag, i + req->r_readdir_offset);
1525 
1526 		update_dentry_lease(dn, rinfo->dir_dlease[i],
1527 				    req->r_session,
1528 				    req->r_request_started);
1529 
1530 		if (err == 0 && cache_ctl.index >= 0) {
1531 			ret = fill_readdir_cache(d_inode(parent), dn,
1532 						 &cache_ctl, req);
1533 			if (ret < 0)
1534 				err = ret;
1535 		}
1536 next_item:
1537 		if (dn)
1538 			dput(dn);
1539 	}
1540 out:
1541 	if (err == 0) {
1542 		req->r_did_prepopulate = true;
1543 		req->r_readdir_cache_idx = cache_ctl.index;
1544 	}
1545 	ceph_readdir_cache_release(&cache_ctl);
1546 	if (snapdir) {
1547 		iput(snapdir);
1548 		dput(parent);
1549 	}
1550 	dout("readdir_prepopulate done\n");
1551 	return err;
1552 }
1553 
ceph_inode_set_size(struct inode * inode,loff_t size)1554 int ceph_inode_set_size(struct inode *inode, loff_t size)
1555 {
1556 	struct ceph_inode_info *ci = ceph_inode(inode);
1557 	int ret = 0;
1558 
1559 	spin_lock(&ci->i_ceph_lock);
1560 	dout("set_size %p %llu -> %llu\n", inode, inode->i_size, size);
1561 	inode->i_size = size;
1562 	inode->i_blocks = (size + (1 << 9) - 1) >> 9;
1563 
1564 	/* tell the MDS if we are approaching max_size */
1565 	if ((size << 1) >= ci->i_max_size &&
1566 	    (ci->i_reported_size << 1) < ci->i_max_size)
1567 		ret = 1;
1568 
1569 	spin_unlock(&ci->i_ceph_lock);
1570 	return ret;
1571 }
1572 
1573 /*
1574  * Write back inode data in a worker thread.  (This can't be done
1575  * in the message handler context.)
1576  */
ceph_queue_writeback(struct inode * inode)1577 void ceph_queue_writeback(struct inode *inode)
1578 {
1579 	ihold(inode);
1580 	if (queue_work(ceph_inode_to_client(inode)->wb_wq,
1581 		       &ceph_inode(inode)->i_wb_work)) {
1582 		dout("ceph_queue_writeback %p\n", inode);
1583 	} else {
1584 		dout("ceph_queue_writeback %p failed\n", inode);
1585 		iput(inode);
1586 	}
1587 }
1588 
ceph_writeback_work(struct work_struct * work)1589 static void ceph_writeback_work(struct work_struct *work)
1590 {
1591 	struct ceph_inode_info *ci = container_of(work, struct ceph_inode_info,
1592 						  i_wb_work);
1593 	struct inode *inode = &ci->vfs_inode;
1594 
1595 	dout("writeback %p\n", inode);
1596 	filemap_fdatawrite(&inode->i_data);
1597 	iput(inode);
1598 }
1599 
1600 /*
1601  * queue an async invalidation
1602  */
ceph_queue_invalidate(struct inode * inode)1603 void ceph_queue_invalidate(struct inode *inode)
1604 {
1605 	ihold(inode);
1606 	if (queue_work(ceph_inode_to_client(inode)->pg_inv_wq,
1607 		       &ceph_inode(inode)->i_pg_inv_work)) {
1608 		dout("ceph_queue_invalidate %p\n", inode);
1609 	} else {
1610 		dout("ceph_queue_invalidate %p failed\n", inode);
1611 		iput(inode);
1612 	}
1613 }
1614 
1615 /*
1616  * Invalidate inode pages in a worker thread.  (This can't be done
1617  * in the message handler context.)
1618  */
ceph_invalidate_work(struct work_struct * work)1619 static void ceph_invalidate_work(struct work_struct *work)
1620 {
1621 	struct ceph_inode_info *ci = container_of(work, struct ceph_inode_info,
1622 						  i_pg_inv_work);
1623 	struct inode *inode = &ci->vfs_inode;
1624 	u32 orig_gen;
1625 	int check = 0;
1626 
1627 	mutex_lock(&ci->i_truncate_mutex);
1628 	spin_lock(&ci->i_ceph_lock);
1629 	dout("invalidate_pages %p gen %d revoking %d\n", inode,
1630 	     ci->i_rdcache_gen, ci->i_rdcache_revoking);
1631 	if (ci->i_rdcache_revoking != ci->i_rdcache_gen) {
1632 		if (__ceph_caps_revoking_other(ci, NULL, CEPH_CAP_FILE_CACHE))
1633 			check = 1;
1634 		spin_unlock(&ci->i_ceph_lock);
1635 		mutex_unlock(&ci->i_truncate_mutex);
1636 		goto out;
1637 	}
1638 	orig_gen = ci->i_rdcache_gen;
1639 	spin_unlock(&ci->i_ceph_lock);
1640 
1641 	truncate_pagecache(inode, 0);
1642 
1643 	spin_lock(&ci->i_ceph_lock);
1644 	if (orig_gen == ci->i_rdcache_gen &&
1645 	    orig_gen == ci->i_rdcache_revoking) {
1646 		dout("invalidate_pages %p gen %d successful\n", inode,
1647 		     ci->i_rdcache_gen);
1648 		ci->i_rdcache_revoking--;
1649 		check = 1;
1650 	} else {
1651 		dout("invalidate_pages %p gen %d raced, now %d revoking %d\n",
1652 		     inode, orig_gen, ci->i_rdcache_gen,
1653 		     ci->i_rdcache_revoking);
1654 		if (__ceph_caps_revoking_other(ci, NULL, CEPH_CAP_FILE_CACHE))
1655 			check = 1;
1656 	}
1657 	spin_unlock(&ci->i_ceph_lock);
1658 	mutex_unlock(&ci->i_truncate_mutex);
1659 out:
1660 	if (check)
1661 		ceph_check_caps(ci, 0, NULL);
1662 	iput(inode);
1663 }
1664 
1665 
1666 /*
1667  * called by trunc_wq;
1668  *
1669  * We also truncate in a separate thread as well.
1670  */
ceph_vmtruncate_work(struct work_struct * work)1671 static void ceph_vmtruncate_work(struct work_struct *work)
1672 {
1673 	struct ceph_inode_info *ci = container_of(work, struct ceph_inode_info,
1674 						  i_vmtruncate_work);
1675 	struct inode *inode = &ci->vfs_inode;
1676 
1677 	dout("vmtruncate_work %p\n", inode);
1678 	__ceph_do_pending_vmtruncate(inode);
1679 	iput(inode);
1680 }
1681 
1682 /*
1683  * Queue an async vmtruncate.  If we fail to queue work, we will handle
1684  * the truncation the next time we call __ceph_do_pending_vmtruncate.
1685  */
ceph_queue_vmtruncate(struct inode * inode)1686 void ceph_queue_vmtruncate(struct inode *inode)
1687 {
1688 	struct ceph_inode_info *ci = ceph_inode(inode);
1689 
1690 	ihold(inode);
1691 
1692 	if (queue_work(ceph_sb_to_client(inode->i_sb)->trunc_wq,
1693 		       &ci->i_vmtruncate_work)) {
1694 		dout("ceph_queue_vmtruncate %p\n", inode);
1695 	} else {
1696 		dout("ceph_queue_vmtruncate %p failed, pending=%d\n",
1697 		     inode, ci->i_truncate_pending);
1698 		iput(inode);
1699 	}
1700 }
1701 
1702 /*
1703  * Make sure any pending truncation is applied before doing anything
1704  * that may depend on it.
1705  */
__ceph_do_pending_vmtruncate(struct inode * inode)1706 void __ceph_do_pending_vmtruncate(struct inode *inode)
1707 {
1708 	struct ceph_inode_info *ci = ceph_inode(inode);
1709 	u64 to;
1710 	int wrbuffer_refs, finish = 0;
1711 
1712 	mutex_lock(&ci->i_truncate_mutex);
1713 retry:
1714 	spin_lock(&ci->i_ceph_lock);
1715 	if (ci->i_truncate_pending == 0) {
1716 		dout("__do_pending_vmtruncate %p none pending\n", inode);
1717 		spin_unlock(&ci->i_ceph_lock);
1718 		mutex_unlock(&ci->i_truncate_mutex);
1719 		return;
1720 	}
1721 
1722 	/*
1723 	 * make sure any dirty snapped pages are flushed before we
1724 	 * possibly truncate them.. so write AND block!
1725 	 */
1726 	if (ci->i_wrbuffer_ref_head < ci->i_wrbuffer_ref) {
1727 		dout("__do_pending_vmtruncate %p flushing snaps first\n",
1728 		     inode);
1729 		spin_unlock(&ci->i_ceph_lock);
1730 		filemap_write_and_wait_range(&inode->i_data, 0,
1731 					     inode->i_sb->s_maxbytes);
1732 		goto retry;
1733 	}
1734 
1735 	/* there should be no reader or writer */
1736 	WARN_ON_ONCE(ci->i_rd_ref || ci->i_wr_ref);
1737 
1738 	to = ci->i_truncate_size;
1739 	wrbuffer_refs = ci->i_wrbuffer_ref;
1740 	dout("__do_pending_vmtruncate %p (%d) to %lld\n", inode,
1741 	     ci->i_truncate_pending, to);
1742 	spin_unlock(&ci->i_ceph_lock);
1743 
1744 	truncate_pagecache(inode, to);
1745 
1746 	spin_lock(&ci->i_ceph_lock);
1747 	if (to == ci->i_truncate_size) {
1748 		ci->i_truncate_pending = 0;
1749 		finish = 1;
1750 	}
1751 	spin_unlock(&ci->i_ceph_lock);
1752 	if (!finish)
1753 		goto retry;
1754 
1755 	mutex_unlock(&ci->i_truncate_mutex);
1756 
1757 	if (wrbuffer_refs == 0)
1758 		ceph_check_caps(ci, CHECK_CAPS_AUTHONLY, NULL);
1759 
1760 	wake_up_all(&ci->i_cap_wq);
1761 }
1762 
1763 /*
1764  * symlinks
1765  */
1766 static const struct inode_operations ceph_symlink_iops = {
1767 	.readlink = generic_readlink,
1768 	.follow_link = simple_follow_link,
1769 	.setattr = ceph_setattr,
1770 	.getattr = ceph_getattr,
1771 	.setxattr = ceph_setxattr,
1772 	.getxattr = ceph_getxattr,
1773 	.listxattr = ceph_listxattr,
1774 	.removexattr = ceph_removexattr,
1775 };
1776 
1777 /*
1778  * setattr
1779  */
__ceph_setattr(struct dentry * dentry,struct iattr * attr)1780 int __ceph_setattr(struct dentry *dentry, struct iattr *attr)
1781 {
1782 	struct inode *inode = d_inode(dentry);
1783 	struct ceph_inode_info *ci = ceph_inode(inode);
1784 	const unsigned int ia_valid = attr->ia_valid;
1785 	struct ceph_mds_request *req;
1786 	struct ceph_mds_client *mdsc = ceph_sb_to_client(dentry->d_sb)->mdsc;
1787 	struct ceph_cap_flush *prealloc_cf;
1788 	int issued;
1789 	int release = 0, dirtied = 0;
1790 	int mask = 0;
1791 	int err = 0;
1792 	int inode_dirty_flags = 0;
1793 	bool lock_snap_rwsem = false;
1794 
1795 	if (ceph_snap(inode) != CEPH_NOSNAP)
1796 		return -EROFS;
1797 
1798 	err = inode_change_ok(inode, attr);
1799 	if (err != 0)
1800 		return err;
1801 
1802 	prealloc_cf = ceph_alloc_cap_flush();
1803 	if (!prealloc_cf)
1804 		return -ENOMEM;
1805 
1806 	req = ceph_mdsc_create_request(mdsc, CEPH_MDS_OP_SETATTR,
1807 				       USE_AUTH_MDS);
1808 	if (IS_ERR(req)) {
1809 		ceph_free_cap_flush(prealloc_cf);
1810 		return PTR_ERR(req);
1811 	}
1812 
1813 	spin_lock(&ci->i_ceph_lock);
1814 	issued = __ceph_caps_issued(ci, NULL);
1815 
1816 	if (!ci->i_head_snapc &&
1817 	    (issued & (CEPH_CAP_ANY_EXCL | CEPH_CAP_FILE_WR))) {
1818 		lock_snap_rwsem = true;
1819 		if (!down_read_trylock(&mdsc->snap_rwsem)) {
1820 			spin_unlock(&ci->i_ceph_lock);
1821 			down_read(&mdsc->snap_rwsem);
1822 			spin_lock(&ci->i_ceph_lock);
1823 			issued = __ceph_caps_issued(ci, NULL);
1824 		}
1825 	}
1826 
1827 	dout("setattr %p issued %s\n", inode, ceph_cap_string(issued));
1828 
1829 	if (ia_valid & ATTR_UID) {
1830 		dout("setattr %p uid %d -> %d\n", inode,
1831 		     from_kuid(&init_user_ns, inode->i_uid),
1832 		     from_kuid(&init_user_ns, attr->ia_uid));
1833 		if (issued & CEPH_CAP_AUTH_EXCL) {
1834 			inode->i_uid = attr->ia_uid;
1835 			dirtied |= CEPH_CAP_AUTH_EXCL;
1836 		} else if ((issued & CEPH_CAP_AUTH_SHARED) == 0 ||
1837 			   !uid_eq(attr->ia_uid, inode->i_uid)) {
1838 			req->r_args.setattr.uid = cpu_to_le32(
1839 				from_kuid(&init_user_ns, attr->ia_uid));
1840 			mask |= CEPH_SETATTR_UID;
1841 			release |= CEPH_CAP_AUTH_SHARED;
1842 		}
1843 	}
1844 	if (ia_valid & ATTR_GID) {
1845 		dout("setattr %p gid %d -> %d\n", inode,
1846 		     from_kgid(&init_user_ns, inode->i_gid),
1847 		     from_kgid(&init_user_ns, attr->ia_gid));
1848 		if (issued & CEPH_CAP_AUTH_EXCL) {
1849 			inode->i_gid = attr->ia_gid;
1850 			dirtied |= CEPH_CAP_AUTH_EXCL;
1851 		} else if ((issued & CEPH_CAP_AUTH_SHARED) == 0 ||
1852 			   !gid_eq(attr->ia_gid, inode->i_gid)) {
1853 			req->r_args.setattr.gid = cpu_to_le32(
1854 				from_kgid(&init_user_ns, attr->ia_gid));
1855 			mask |= CEPH_SETATTR_GID;
1856 			release |= CEPH_CAP_AUTH_SHARED;
1857 		}
1858 	}
1859 	if (ia_valid & ATTR_MODE) {
1860 		dout("setattr %p mode 0%o -> 0%o\n", inode, inode->i_mode,
1861 		     attr->ia_mode);
1862 		if (issued & CEPH_CAP_AUTH_EXCL) {
1863 			inode->i_mode = attr->ia_mode;
1864 			dirtied |= CEPH_CAP_AUTH_EXCL;
1865 		} else if ((issued & CEPH_CAP_AUTH_SHARED) == 0 ||
1866 			   attr->ia_mode != inode->i_mode) {
1867 			inode->i_mode = attr->ia_mode;
1868 			req->r_args.setattr.mode = cpu_to_le32(attr->ia_mode);
1869 			mask |= CEPH_SETATTR_MODE;
1870 			release |= CEPH_CAP_AUTH_SHARED;
1871 		}
1872 	}
1873 
1874 	if (ia_valid & ATTR_ATIME) {
1875 		dout("setattr %p atime %ld.%ld -> %ld.%ld\n", inode,
1876 		     inode->i_atime.tv_sec, inode->i_atime.tv_nsec,
1877 		     attr->ia_atime.tv_sec, attr->ia_atime.tv_nsec);
1878 		if (issued & CEPH_CAP_FILE_EXCL) {
1879 			ci->i_time_warp_seq++;
1880 			inode->i_atime = attr->ia_atime;
1881 			dirtied |= CEPH_CAP_FILE_EXCL;
1882 		} else if ((issued & CEPH_CAP_FILE_WR) &&
1883 			   timespec_compare(&inode->i_atime,
1884 					    &attr->ia_atime) < 0) {
1885 			inode->i_atime = attr->ia_atime;
1886 			dirtied |= CEPH_CAP_FILE_WR;
1887 		} else if ((issued & CEPH_CAP_FILE_SHARED) == 0 ||
1888 			   !timespec_equal(&inode->i_atime, &attr->ia_atime)) {
1889 			ceph_encode_timespec(&req->r_args.setattr.atime,
1890 					     &attr->ia_atime);
1891 			mask |= CEPH_SETATTR_ATIME;
1892 			release |= CEPH_CAP_FILE_CACHE | CEPH_CAP_FILE_RD |
1893 				CEPH_CAP_FILE_WR;
1894 		}
1895 	}
1896 	if (ia_valid & ATTR_MTIME) {
1897 		dout("setattr %p mtime %ld.%ld -> %ld.%ld\n", inode,
1898 		     inode->i_mtime.tv_sec, inode->i_mtime.tv_nsec,
1899 		     attr->ia_mtime.tv_sec, attr->ia_mtime.tv_nsec);
1900 		if (issued & CEPH_CAP_FILE_EXCL) {
1901 			ci->i_time_warp_seq++;
1902 			inode->i_mtime = attr->ia_mtime;
1903 			dirtied |= CEPH_CAP_FILE_EXCL;
1904 		} else if ((issued & CEPH_CAP_FILE_WR) &&
1905 			   timespec_compare(&inode->i_mtime,
1906 					    &attr->ia_mtime) < 0) {
1907 			inode->i_mtime = attr->ia_mtime;
1908 			dirtied |= CEPH_CAP_FILE_WR;
1909 		} else if ((issued & CEPH_CAP_FILE_SHARED) == 0 ||
1910 			   !timespec_equal(&inode->i_mtime, &attr->ia_mtime)) {
1911 			ceph_encode_timespec(&req->r_args.setattr.mtime,
1912 					     &attr->ia_mtime);
1913 			mask |= CEPH_SETATTR_MTIME;
1914 			release |= CEPH_CAP_FILE_SHARED | CEPH_CAP_FILE_RD |
1915 				CEPH_CAP_FILE_WR;
1916 		}
1917 	}
1918 	if (ia_valid & ATTR_SIZE) {
1919 		dout("setattr %p size %lld -> %lld\n", inode,
1920 		     inode->i_size, attr->ia_size);
1921 		if ((issued & CEPH_CAP_FILE_EXCL) &&
1922 		    attr->ia_size > inode->i_size) {
1923 			inode->i_size = attr->ia_size;
1924 			inode->i_blocks =
1925 				(attr->ia_size + (1 << 9) - 1) >> 9;
1926 			inode->i_ctime = attr->ia_ctime;
1927 			ci->i_reported_size = attr->ia_size;
1928 			dirtied |= CEPH_CAP_FILE_EXCL;
1929 		} else if ((issued & CEPH_CAP_FILE_SHARED) == 0 ||
1930 			   attr->ia_size != inode->i_size) {
1931 			req->r_args.setattr.size = cpu_to_le64(attr->ia_size);
1932 			req->r_args.setattr.old_size =
1933 				cpu_to_le64(inode->i_size);
1934 			mask |= CEPH_SETATTR_SIZE;
1935 			release |= CEPH_CAP_FILE_SHARED | CEPH_CAP_FILE_RD |
1936 				CEPH_CAP_FILE_WR;
1937 		}
1938 	}
1939 
1940 	/* these do nothing */
1941 	if (ia_valid & ATTR_CTIME) {
1942 		bool only = (ia_valid & (ATTR_SIZE|ATTR_MTIME|ATTR_ATIME|
1943 					 ATTR_MODE|ATTR_UID|ATTR_GID)) == 0;
1944 		dout("setattr %p ctime %ld.%ld -> %ld.%ld (%s)\n", inode,
1945 		     inode->i_ctime.tv_sec, inode->i_ctime.tv_nsec,
1946 		     attr->ia_ctime.tv_sec, attr->ia_ctime.tv_nsec,
1947 		     only ? "ctime only" : "ignored");
1948 		inode->i_ctime = attr->ia_ctime;
1949 		if (only) {
1950 			/*
1951 			 * if kernel wants to dirty ctime but nothing else,
1952 			 * we need to choose a cap to dirty under, or do
1953 			 * a almost-no-op setattr
1954 			 */
1955 			if (issued & CEPH_CAP_AUTH_EXCL)
1956 				dirtied |= CEPH_CAP_AUTH_EXCL;
1957 			else if (issued & CEPH_CAP_FILE_EXCL)
1958 				dirtied |= CEPH_CAP_FILE_EXCL;
1959 			else if (issued & CEPH_CAP_XATTR_EXCL)
1960 				dirtied |= CEPH_CAP_XATTR_EXCL;
1961 			else
1962 				mask |= CEPH_SETATTR_CTIME;
1963 		}
1964 	}
1965 	if (ia_valid & ATTR_FILE)
1966 		dout("setattr %p ATTR_FILE ... hrm!\n", inode);
1967 
1968 	if (dirtied) {
1969 		inode_dirty_flags = __ceph_mark_dirty_caps(ci, dirtied,
1970 							   &prealloc_cf);
1971 		inode->i_ctime = CURRENT_TIME;
1972 	}
1973 
1974 	release &= issued;
1975 	spin_unlock(&ci->i_ceph_lock);
1976 	if (lock_snap_rwsem)
1977 		up_read(&mdsc->snap_rwsem);
1978 
1979 	if (inode_dirty_flags)
1980 		__mark_inode_dirty(inode, inode_dirty_flags);
1981 
1982 
1983 	if (mask) {
1984 		req->r_inode = inode;
1985 		ihold(inode);
1986 		req->r_inode_drop = release;
1987 		req->r_args.setattr.mask = cpu_to_le32(mask);
1988 		req->r_num_caps = 1;
1989 		err = ceph_mdsc_do_request(mdsc, NULL, req);
1990 	}
1991 	dout("setattr %p result=%d (%s locally, %d remote)\n", inode, err,
1992 	     ceph_cap_string(dirtied), mask);
1993 
1994 	ceph_mdsc_put_request(req);
1995 	ceph_free_cap_flush(prealloc_cf);
1996 
1997 	if (err >= 0 && (mask & CEPH_SETATTR_SIZE))
1998 		__ceph_do_pending_vmtruncate(inode);
1999 
2000 	return err;
2001 }
2002 
ceph_setattr(struct dentry * dentry,struct iattr * attr)2003 int ceph_setattr(struct dentry *dentry, struct iattr *attr)
2004 {
2005 	int err;
2006 
2007 	err = __ceph_setattr(dentry, attr);
2008 
2009 	if (err >= 0 && (attr->ia_valid & ATTR_MODE))
2010 		err = posix_acl_chmod(d_inode(dentry), attr->ia_mode);
2011 
2012 	return err;
2013 }
2014 
2015 /*
2016  * Verify that we have a lease on the given mask.  If not,
2017  * do a getattr against an mds.
2018  */
__ceph_do_getattr(struct inode * inode,struct page * locked_page,int mask,bool force)2019 int __ceph_do_getattr(struct inode *inode, struct page *locked_page,
2020 		      int mask, bool force)
2021 {
2022 	struct ceph_fs_client *fsc = ceph_sb_to_client(inode->i_sb);
2023 	struct ceph_mds_client *mdsc = fsc->mdsc;
2024 	struct ceph_mds_request *req;
2025 	int err;
2026 
2027 	if (ceph_snap(inode) == CEPH_SNAPDIR) {
2028 		dout("do_getattr inode %p SNAPDIR\n", inode);
2029 		return 0;
2030 	}
2031 
2032 	dout("do_getattr inode %p mask %s mode 0%o\n",
2033 	     inode, ceph_cap_string(mask), inode->i_mode);
2034 	if (!force && ceph_caps_issued_mask(ceph_inode(inode), mask, 1))
2035 		return 0;
2036 
2037 	req = ceph_mdsc_create_request(mdsc, CEPH_MDS_OP_GETATTR, USE_ANY_MDS);
2038 	if (IS_ERR(req))
2039 		return PTR_ERR(req);
2040 	req->r_inode = inode;
2041 	ihold(inode);
2042 	req->r_num_caps = 1;
2043 	req->r_args.getattr.mask = cpu_to_le32(mask);
2044 	req->r_locked_page = locked_page;
2045 	err = ceph_mdsc_do_request(mdsc, NULL, req);
2046 	if (locked_page && err == 0) {
2047 		u64 inline_version = req->r_reply_info.targeti.inline_version;
2048 		if (inline_version == 0) {
2049 			/* the reply is supposed to contain inline data */
2050 			err = -EINVAL;
2051 		} else if (inline_version == CEPH_INLINE_NONE) {
2052 			err = -ENODATA;
2053 		} else {
2054 			err = req->r_reply_info.targeti.inline_len;
2055 		}
2056 	}
2057 	ceph_mdsc_put_request(req);
2058 	dout("do_getattr result=%d\n", err);
2059 	return err;
2060 }
2061 
2062 
2063 /*
2064  * Check inode permissions.  We verify we have a valid value for
2065  * the AUTH cap, then call the generic handler.
2066  */
ceph_permission(struct inode * inode,int mask)2067 int ceph_permission(struct inode *inode, int mask)
2068 {
2069 	int err;
2070 
2071 	if (mask & MAY_NOT_BLOCK)
2072 		return -ECHILD;
2073 
2074 	err = ceph_do_getattr(inode, CEPH_CAP_AUTH_SHARED, false);
2075 
2076 	if (!err)
2077 		err = generic_permission(inode, mask);
2078 	return err;
2079 }
2080 
2081 /*
2082  * Get all attributes.  Hopefully somedata we'll have a statlite()
2083  * and can limit the fields we require to be accurate.
2084  */
ceph_getattr(struct vfsmount * mnt,struct dentry * dentry,struct kstat * stat)2085 int ceph_getattr(struct vfsmount *mnt, struct dentry *dentry,
2086 		 struct kstat *stat)
2087 {
2088 	struct inode *inode = d_inode(dentry);
2089 	struct ceph_inode_info *ci = ceph_inode(inode);
2090 	int err;
2091 
2092 	err = ceph_do_getattr(inode, CEPH_STAT_CAP_INODE_ALL, false);
2093 	if (!err) {
2094 		generic_fillattr(inode, stat);
2095 		stat->ino = ceph_translate_ino(inode->i_sb, inode->i_ino);
2096 		if (ceph_snap(inode) != CEPH_NOSNAP)
2097 			stat->dev = ceph_snap(inode);
2098 		else
2099 			stat->dev = 0;
2100 		if (S_ISDIR(inode->i_mode)) {
2101 			if (ceph_test_mount_opt(ceph_sb_to_client(inode->i_sb),
2102 						RBYTES))
2103 				stat->size = ci->i_rbytes;
2104 			else
2105 				stat->size = ci->i_files + ci->i_subdirs;
2106 			stat->blocks = 0;
2107 			stat->blksize = 65536;
2108 		}
2109 	}
2110 	return err;
2111 }
2112